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- W2321330571 abstract "The trajectories of silica and germania fine particles in the flow fields of combustion gases were simulated to find optimum conditions for producing the optical fiber soot preform by the VAD method. The proposed model simulates two-dimensional flow of combustion gases and the particle trajectories by considering the interactions between the gas and the particles in given temperature fields. The obtained results are summarized as follows: (1) Thermophoresis influences the particle trajectories in the vicinity of the preform surface and draws the particles toward the surface. The temperature gradient in the combustion gas, to which thermophoresis velocity is proportional, must be kept large in that region. (2) Optimum distributions of silica and germania particles in the soot preform, contrary to expectation, is attained not by the difference in particle properties such as density and thermal conductivity but by the spatial distribution of both metallic oxides in the flame and the combustion gas flow. Then it is important to analyze the flame structure and chemical reactions producing these particles, and hence to control the distribution of the reaction zone and also the flow field of the flame." @default.
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- W2321330571 date "1990-01-01" @default.
- W2321330571 modified "2023-10-02" @default.
- W2321330571 title "Optimization in Optical Fiber Preform Production by VAD Method" @default.
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- W2321330571 doi "https://doi.org/10.2109/jcersj.98.679" @default.
- W2321330571 hasPublicationYear "1990" @default.
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